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Efficient decomposition of NO by ammonia radical-injection method using an intermittent dielectric barrier discharge

机译:使用间歇介电势垒放电的氨自由基注入法有效分解NO

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摘要

Although many NO decomposition systems have been developed using plasmas such as dielectric barrier discharges (DBDs), corona discharges, surface discharges, glow discharges, and microwave discharges, the present system is unique on the viewpoint of the use of an intermittent one-cycle sinusoidal power source to generate DBD plasma. There are several features of the system: (1) easy control of the electric power consumed in the DBD plasma, and (2) DBD-plasma generation used only for the production of ammonia radicals. The system employs a radical injection system, where the radicals are produced in a separate discharge chamber, called radical injector, from NO flow field. This enables an efficient production of ammonia radicals being appropriate for DeNOx. It is shown from the temperature dependence of NO removal (DeNOx) characteristics that the present system is a low-temperature DeNOx system compared to a conventional thermal DeNOx system, and NO decomposition is performed over a wide range of gas temperature containing NO. Surveying parametric characteristics of DeNOx, the energy efficiency is improved by a factor of 30% compared to the previously obtained result.
机译:尽管已经开发出许多使用等离子体的NO分解系统,例如电介质阻挡层放电(DBD),电晕放电,表面放电,辉光放电和微波放电,但是从间歇性单周期正弦波的使用来看,本系统是独特的产生DBD等离子体的电源。该系统具有多个功能:(1)易于控制DBD等离子体中消耗的电力,以及(2)仅用于产生氨自由基的DBD等离子体产生。该系统采用自由基注入系统,其中自由基是从NO流场在单独的排放室(称为自由基注入器)中产生的。这使得能够有效地产生适合于DeNOx的氨自由基。从NO去除(DeNOx)特性的温度依赖性可以看出,与常规的热DeNOx系统相比,本系统是低温DeNOx系统,并且在包含NO的气体温度的宽范围内进行NO分解。通过测量DeNOx的参数特性,与以前获得的结果相比,能效提高了30%。

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